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WO2009103822A1 - Preparation of free flowing granules of methyglycine diacetic acid - Google Patents

Preparation of free flowing granules of methyglycine diacetic acid Download PDF

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Publication number
WO2009103822A1
WO2009103822A1 PCT/EP2009/053781 EP2009053781W WO2009103822A1 WO 2009103822 A1 WO2009103822 A1 WO 2009103822A1 EP 2009053781 W EP2009053781 W EP 2009053781W WO 2009103822 A1 WO2009103822 A1 WO 2009103822A1
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WO
WIPO (PCT)
Prior art keywords
mgda
granules
diacetic acid
range
process according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/EP2009/053781
Other languages
French (fr)
Inventor
Huig Euser
Jean-Paul Janssens
Robert Jan Moll
Jerome Georges Michel Sonjon
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hindustan Unilever Ltd
Unilever NV
Original Assignee
Hindustan Unilever Ltd
Unilever NV
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Application filed by Hindustan Unilever Ltd, Unilever NV filed Critical Hindustan Unilever Ltd
Priority to BRPI0911375A priority Critical patent/BRPI0911375A2/en
Priority to MX2010010779A priority patent/MX2010010779A/en
Priority to EA201001565A priority patent/EA031547B1/en
Priority to CA2719754A priority patent/CA2719754C/en
Priority to EP09712776.5A priority patent/EP2257522B1/en
Priority to US12/935,007 priority patent/US8183410B2/en
Publication of WO2009103822A1 publication Critical patent/WO2009103822A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07CACYCLIC OR CARBOCYCLIC COMPOUNDS
    • C07C227/00Preparation of compounds containing amino and carboxyl groups bound to the same carbon skeleton
    • C07C227/38Separation; Purification; Stabilisation; Use of additives
    • C07C227/40Separation; Purification
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D17/00Detergent materials or soaps characterised by their shape or physical properties
    • C11D17/0047Detergents in the form of bars or tablets
    • C11D17/0065Solid detergents containing builders
    • C11D17/0073Tablets
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D3/00Other compounding ingredients of detergent compositions covered in group C11D1/00
    • C11D3/16Organic compounds
    • C11D3/26Organic compounds containing nitrogen
    • C11D3/33Amino carboxylic acids
    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D7/00Compositions of detergents based essentially on non-surface-active compounds
    • C11D7/22Organic compounds
    • C11D7/32Organic compounds containing nitrogen
    • C11D7/3245Aminoacids

Definitions

  • the present invention is in the field of the preparation of free flowing granules containing one or more salts of methylglycine diacetic acid (MGDA) . More specifically, the invention encompasses the preparation of free flowing granules of one or more salts of methylglycine diacetic acid (MGDA) with low hygroscopicity, and the use thereof, in particular in machine dishwash detergent compositions.
  • MGDA methylglycine diacetic acid
  • Amino polycarboxylic compounds such as methylglycine diacetic acid (MGDA) and variants thereof e.g. NTA (nitrile triacetic acid) , GDA (glutamic diacetic acid) , DPA (dipicolinic acid) and IDS (imino disuccinic acid) are suitable compounds for use as builder material in detergent compositions.
  • MGDA methylglycine diacetic acid
  • NTA nitrile triacetic acid
  • GDA glutmic diacetic acid
  • DPA dipicolinic acid
  • IDS imino disuccinic acid
  • Particles of MGDA made via conventional spray drying processes tend to be fine and dusty, have a high tendency to absorb water at ambient conditions and loose their free-flowiness .
  • the resulting products are hygroscopic, resulting in sticky powder and even in lumps.
  • Different routes have been developed for preparing solids from solutions of glycine-N, N-diacetic acid derivatives were these drawbacks are overcome.
  • US 3956379 describes a process in which a concentrated slurry of NTA is spray dried at very high temperatures. This has been found to result in porous and friable products.
  • DD 296 680 discloses the spray-granulation of saturated solution of NTA. The example discloses a solution which is well below the saturation point of NTA.
  • R CH3 and M is hydrogen, alkali metal, alkaline earth metal, ammonium or substituted ammonium in the appropriate stoechiometric amounts.
  • M is sodium.
  • free flowing granules comprising methylglycine diacetic acid (MGDA) or salts thereof are prepared. It has been found that this particular glycine-N,N- diacetic acid derivative provides very good performance as builder material in detergent compositions, in particular in machine dishwash detergent compositions.
  • MGDA methylglycine diacetic acid salt
  • granules of the invention have been found to be advantageous when compared to the granules prepared by the method of EP845456, when applied for the production of detergent tablets.
  • tablets of good strength can be prepared applying lower tabletting forces when compared to forces used for preparing tablets using MGDA granules produced according to the prior art.
  • the word hygroscopicity is not only used to describe the phenomenon of the tendency to absorb water, but also the tendency to become sticky.
  • the granules are referred to as being of sufficiently low hygroscopicity if, on open storage under normal ambient conditions, e.g. 20 0 C and a relative humidity of 65%, it retains its consistency as flowable granules over a period of at least one week.
  • MGDA methylglycine diacetic acid
  • its purity is usually found in the range of 70 to 99.9%, and preferably in the range of 80 to 99.9%, calculated on the dry matter content.
  • an amount of MGDA is indicated, material of such purity is meant unless indicated otherwise.
  • Other components present are the impurities commonly formed in the production process of MGDA.
  • MGDA is referred to and is in its solid form such as powder, seed material or granules
  • a salt such as the sodium salt of MGDA, or a combination of salts is meant.
  • Particle size is measured by sieving. The mean particle size is calculated as the weight average.
  • R CH3 and M is hydrogen, alkali metal, alkaline earth metal, ammonium or substituted ammonium in the appropriate stoechiometric amounts, by a process comprising the steps of i) heating a concentrated slurry comprising methylglycine diacetic acid (MGDA) and/or any salts thereof, the slurry having a solids content content in the range of 45% to 70% and suitably in the range from 50% to 70%, and a moisture content of 30% up to 55%, and suitably between 30% and 50%, to a temperature in the range of 50 to 12O 0 C, preferably to about 8O 0 C, and ii) spray granulating said slurry, using an air inlet temperature of 120 0 C or less.
  • MGDA methylglycine diacetic acid
  • the concentrated slurry consists of methylglycine diacetic acid (MGDA) and/or any salts thereof.
  • MGDA methylglycine diacetic acid
  • the spray granulating the granules of a size larger than 200 ⁇ m, preferably larger than 300 ⁇ m and more preferred of about 400 ⁇ m or more are removed from the spray granulation equipment.
  • Removal of the granules of desired size can be done by a suitable method for continuous spray granulation, such as cyclone separation and filters or air classification.
  • air classification is used for separating out the particles of the desired size. By adjustment of the air stream speed particles of (more than) a certain weight will fall down and are collected at the bottom of the equipment. Smaller particles are lifted up by the air stream to the cyclone and then back into the spray chamber.
  • the process further comprises iii) removing the granules formed during said spray granulation from the spray granulation equipment; iv) size separating the granules formed.
  • this embodiment is also preferred to obtain larger granules and suitably, return the fines.
  • process may additionally comprise the steps of v) returning the particles of step iv) of a size ⁇ 200 ⁇ m, preferably ⁇ 300 ⁇ m, to the spray granulation tower for further spray granulation, and vi) collecting the granules of a size larger than 200 ⁇ m, preferably of larger than 300 ⁇ m, more preferred of about 400 ⁇ m or more and optionally, removing the particles larger than 1200 ⁇ m.
  • Size separation can be done by any method known in the art and in particular when applying the batch process, is usually and suitably done by sieving.
  • the invention furthermore encompasses a process for preparing free flowing granules of low hygroscopicity containing methylglycine diacetic acid (MGDA) salt(s) of the formula indicated above, by the steps of any of the spray granulation processes described, and wherein the MGDA containing granules prepared have a mean particle size in the range of 350 ⁇ m to 750 ⁇ m, and preferably in the range of 450 ⁇ m to 750 ⁇ m.
  • MGDA methylglycine diacetic acid
  • the MGDA obtained by the process of the invention is dust free, and, in general, has an mean particle size in the range of 350 ⁇ m to 750 ⁇ m. It is preferred to adjust the particle size of the MGDA containing granules to the size of the further components used in the detergent composition.
  • the granules obtained with the process of the invention are larger than 200 ⁇ m, and preferably larger than 300 ⁇ m, more preferred larger than 400 ⁇ m or even larger than 450 ⁇ m.
  • the granules are smaller than 1200 ⁇ m, more preferred smaller than 1000 ⁇ m and even more preferred smaller than 900 ⁇ m.
  • the preparation of granules which have a size in the range of 300 ⁇ m to 1000 ⁇ m is preferred.
  • the granules have a size in the range of 400 ⁇ m to 1000 ⁇ m, the mean particle size being in the range of 450 ⁇ m to 750 ⁇ m.
  • the granules have size in the range of 400 ⁇ m to 1000 ⁇ m, the mean particle size being in the range of 600 ⁇ m to 700 ⁇ m.
  • a preferred process includes the removal of granules of a size larger than 200 ⁇ m, preferably of about 300 ⁇ m or more from the spray granulation equipment, followed by sieving out the then collected granules having a mesh size of more than 1200 ⁇ m, preferably of more than 1100 ⁇ m, more preferred of more than 900 ⁇ m.
  • free flowing methylglycine diacetic acid (MGDA) granules of the formula indicated above are prepared from a concentrated slurry having an MGDA content of at least 45%-70% and suitably from 50% to 70%, and a moisture content between 30% and 55%, and suitably between 30% and 50%.
  • MGDA methylglycine diacetic acid
  • a concentrated slurry having an MGDA content of at least 45%-70% and suitably from 50% to 70%, and a moisture content between 30% and 55%, and suitably between 30% and 50%.
  • MGDA methylglycine diacetic acid
  • seed particles are present in said slurry, which will allow crystallisation and so, at the start of the spray granulation process sufficient seed granules are present.
  • the granules are formed by spraying small quantities of the slurry onto seed particles while these are fluidised with the warm gas stream to evaporate the solvent from the liquid sprayed onto the seed particles.
  • seed particles can be applied. Where further ingredients are present in the slurry, also seed particles should be present in the slurry.
  • the slurry is an aqueous slurry.
  • the concentrated slurry is heated to a temperature in the range of 50 to 12O 0 C, and preferably to above 70 0 C, more preferred to about 8O 0 C. It is furthermore preferred that the slurry is heated to a temperature of not more than 110 0 C, preferably less than 100°C.
  • the spray granulation process it is preferred to spray granulate the MGDA containing slurry at an inlet air temperature of up to 120 0 C.
  • an inlet air temperature of up to 120 0 C.
  • the maximum air temperature should be chosen be below the melting temperature of the material, whereas the minimum air temperature should be to chosen such that the solvent evaporates rapidly, suitably being on or above the boiling temperature of the solvent.
  • the inlet air temperature is preferably at least 100 0 C.
  • the inlet air temperature is in the range of 100 to 120 0 C where an aqueous slurry is applied in the spray granulation process of the invention.
  • the inlet air temperature is less than 115°C, and more preferred in the range of 90 to 115°C.
  • the resulting particles are free flowing and have a low hygroscopicity .
  • Free flowing in this context includes that particles are free flowing upon movement or handling.
  • the moisture uptake during the one week storage of the hygroscopicity test is less than 23%, further preferred less than 17%.
  • the slurry feed stream is passed through a nozzle inside the spray dryer chamber, where it immediately comes into contact with a fluidizing gas stream at controlled temperature.
  • the solvent evaporates rapidly and the resulting granules are separated from the air stream.
  • this separation can be done inside the fluidiser through a fluidiser classifier, or outside by sieving. The too fine particles are retained inside or returned to the fluidiser for further spray- granulation.
  • the production process furthermore allows for the preparation of granules comprising, in addition to MGDA salt, other (added) ingredients such as polymers, inorganic salts, and/or citrate or a combination thereof.
  • granules are prepared from a slurry containing MGDA and/or any salts thereof, and any further ingredients as desired.
  • Suitable compounds can be selected from the composition the MGDA is intended to be used in.
  • the compounds can be selected from an ingredient suitably used in such a dishwash composition.
  • Examples of compounds found to be suitable for use in the process of the invention are inorganic salts, such as carbonate, sulphate, silicate; organic salts, used e.g. as builders, such as citrate; or polymers, such as polyacrylates or sulphonated polymers. Mixtures of one or more of these compounds can be applied as well. These compounds are usually readily available as solutions and therefore allow for easy application in the current process, as such a solution can be mixed with a slurry containing MGDA and/or any salts thereof . The resulting granules are homogeneous and, regardless of size, contain uniform proportions of the ingredients. However, it has also been observed that such combination may lead to a reduction of hygroscopicity .
  • the amount of further ingredients is therefore less than 25 wt%, preferably less than 20 wt% and even more preferred less than 15 wt%, based on the amount of MGDA.
  • the process can be applied as a continuous process or batch process, the continuous process being preferred. The process allows for the preparation of granules having a size matching that of the further ingredients present in composition the granules will be used in, such is indicated above in this patent specification.
  • the resulting products in this process of the invention are found to show improved product stability, and, in particular, improved friability resistance.
  • Friability test is carried out to determine the degree of disintegration of granules as a result of attrition during pneumatic transport. In this test, a current with a constant flow of 14.5 litres per minute is passed for 5 minutes through a sample from which particles larger than 1250 ⁇ m and smaller than 180 ⁇ m have been removed by sieving. The quantity of granulate (wt%) that has been broken into particles smaller than 180 ⁇ m is then determined. The result is calculated as follows :
  • the percentage attrition is expressed as % of raw material smaller than 180 ⁇ m after the test.
  • Comparative example The slurry of these compositions was heated to 50 0 C for examples A and 85°C for example B.
  • Example B gives excellent low hygroscopicity, will also particle size and friability are significantly improved compared to the comparative example where the moisture content is more than 55% and the concentration of MGDA is below 45%.
  • a throughput of about 30kg/h was spray granulated.
  • An inlet air of 105 0 C for example C and 100° for example D was applied to fluidize the particles.
  • the particles temperature in the bed was about 55°C.
  • An inlet air classification was applied in order to get the particles of mean size above 400 ⁇ m out.

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Wood Science & Technology (AREA)
  • Detergent Compositions (AREA)
  • Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
  • Seeds, Soups, And Other Foods (AREA)

Abstract

The present invention concerns a process for the preparation of free flowing granules of low hygroscopicity of one or more methylglycine diacetic acid (MGDA) salts, of the formula wherein R = CH3 and M is hydrogen, alkali metal, alkaline earth metal, ammonium or substituted ammonium in the appropriate stoechiometric amounts, by a process comprising the steps of i) heating a concentrated slurry comprising methylglycine diacetic acid (MGDA) and/or any salts thereof, the slurry having a solids content content in the range of 45% to 70% and suitably in the range from 50% to 70%, and a moisture content of 30% up to 55%, and suitably between 30% and 50%, to a temperature in the range of 50 to 120°C, preferably to about 80°C, and ii) spray granulating said slurry, using an air inlet temperature of 120°C or less.

Description

PREPARATION OF FREE FLOWING GRANULES OF METHYLGLYCINE DIACETIC ACID
Technical field of the invention The present invention is in the field of the preparation of free flowing granules containing one or more salts of methylglycine diacetic acid (MGDA) . More specifically, the invention encompasses the preparation of free flowing granules of one or more salts of methylglycine diacetic acid (MGDA) with low hygroscopicity, and the use thereof, in particular in machine dishwash detergent compositions.
Background to the invention
Amino polycarboxylic compounds such as methylglycine diacetic acid (MGDA) and variants thereof e.g. NTA (nitrile triacetic acid) , GDA (glutamic diacetic acid) , DPA (dipicolinic acid) and IDS (imino disuccinic acid) are suitable compounds for use as builder material in detergent compositions. The use thereof is however, in most cases restricted to their use in liquid applications. This is due to the fact that these materials in solid form tend to be hygroscopic and, on storage under ambient conditions, show an unacceptably reduced flowability. Such a restricted flowability is also considered a significant drawback on production of detergent compositions.
Particles of MGDA made via conventional spray drying processes tend to be fine and dusty, have a high tendency to absorb water at ambient conditions and loose their free-flowiness . The resulting products are hygroscopic, resulting in sticky powder and even in lumps. Different routes have been developed for preparing solids from solutions of glycine-N, N-diacetic acid derivatives were these drawbacks are overcome. US 3956379 describes a process in which a concentrated slurry of NTA is spray dried at very high temperatures. This has been found to result in porous and friable products. DD 296 680 discloses the spray-granulation of saturated solution of NTA. The example discloses a solution which is well below the saturation point of NTA. It has been found that the use of the saturated solution still results in products with very poor hygroscopicity . In EP 845456, the crystallisation of a very concentrated composition of the glycine-N, N-diacetic acid derivatives, containing between 10 and 30% moisture is described. By this process large particles with low hygroscopicity and good flowability can be obtained. However, this process requires dedicated equipment, and the low moisture composition has been found to be very difficult to process. Consequently, such a process is quite expensive.
Summary of the invention
In one embodiment, it is the object of the invention to provide for a process for preparing free flowing granules of low hygroscopicity comprising glycine-N, N-diacetic acid derivatives of the formula
CH2COOW
CB N*
"^ CH2COOH wherein
R = CH3 and M is hydrogen, alkali metal, alkaline earth metal, ammonium or substituted ammonium in the appropriate stoechiometric amounts. Preferably, M is sodium. In this embodiment, free flowing granules comprising methylglycine diacetic acid (MGDA) or salts thereof are prepared. It has been found that this particular glycine-N,N- diacetic acid derivative provides very good performance as builder material in detergent compositions, in particular in machine dishwash detergent compositions.
Accordingly, in a second embodiment of this invention the use of such free flowing granules in detergent compositions is proposed, more in particular in machine dishwash detergent compositions .
In a further embodiment, the use of such free flowing granules for preparation of detergent tablets is proposed.
Detailed description of the invention
We have now found a method for the production of granules containing or consisting of methylglycine diacetic acid salt (MGDA) by which free flowing MGDA particles can be obtained of any granule size -granule size usually being in the range of 50-2000 μm - as desired, of uniform size if so desired, and of which the particles do not lead to hygroscopicity and have a good friability resistance. The process as such is readily available in the industry, and process conditions are easily applied. Moreover, it has been observed that the granules of the invention are advantageous compared to MGDA powder prepared by a conventional method such as spray drying, as the hygroscopicity is significantly reduced. Furthermore, granules of the invention have been found to be advantageous when compared to the granules prepared by the method of EP845456, when applied for the production of detergent tablets. In particular, it was found that the forces needed for pressing tablets can be reduced. Accordingly, tablets of good strength can be prepared applying lower tabletting forces when compared to forces used for preparing tablets using MGDA granules produced according to the prior art.
In the specification the word hygroscopicity is not only used to describe the phenomenon of the tendency to absorb water, but also the tendency to become sticky. In this specification, the granules are referred to as being of sufficiently low hygroscopicity if, on open storage under normal ambient conditions, e.g. 200C and a relative humidity of 65%, it retains its consistency as flowable granules over a period of at least one week. Depending on the method of preparation of the methylglycine diacetic acid (MGDA) or its salts, its purity is usually found in the range of 70 to 99.9%, and preferably in the range of 80 to 99.9%, calculated on the dry matter content. When in this specification an amount of MGDA is indicated, material of such purity is meant unless indicated otherwise. Other components present are the impurities commonly formed in the production process of MGDA.
In this specification, where MGDA is referred to and is in its solid form such as powder, seed material or granules, a salt such as the sodium salt of MGDA, or a combination of salts is meant.
Particle size is measured by sieving. The mean particle size is calculated as the weight average.
In the specification, were a percentage is indicated weight percentage is meant unless indicated otherwise. Thus, a process is found process for the preparation of free flowing granules of low hygroscopicity of one or more methylglycine diacetic acid (MGDA) salts, of the formula
R
CH2COOM
MOOC— CH N
CfJ2COOM wherein
R = CH3 and M is hydrogen, alkali metal, alkaline earth metal, ammonium or substituted ammonium in the appropriate stoechiometric amounts, by a process comprising the steps of i) heating a concentrated slurry comprising methylglycine diacetic acid (MGDA) and/or any salts thereof, the slurry having a solids content content in the range of 45% to 70% and suitably in the range from 50% to 70%, and a moisture content of 30% up to 55%, and suitably between 30% and 50%, to a temperature in the range of 50 to 12O0C, preferably to about 8O0C, and ii) spray granulating said slurry, using an air inlet temperature of 1200C or less.
In a preferred embodiment, the concentrated slurry consists of methylglycine diacetic acid (MGDA) and/or any salts thereof.
In spray-granulation, it is the objective to spray the slurry onto existing seeds in the drying chamber and dry the slurry at that location so that the seeds grow to granules. Only when the granules reach a certain particle size the product is discharged from the equipment. This can be done batch wise, or even continuous. The advantages found with the process of the invention are observed irrespective of whether the particles are prepared in a continuous or in batch process. The use of a continuous process has a number of advantages over the batch process and results in a further reduction of costs compared to other methods known for preparation of free-flowing granules of low hygroscopicity . Therefore, a continuous spray granulation process for the production of free-flowing MGDA (salt) granules is a preferred embodiment of this invention.
Where the use of a continuous process is envisaged, it is preferred that after the spray granulating the granules of a size larger than 200 μm, preferably larger than 300 μm and more preferred of about 400 μm or more are removed from the spray granulation equipment.
Removal of the granules of desired size can be done by a suitable method for continuous spray granulation, such as cyclone separation and filters or air classification. In a preferred embodiment, air classification is used for separating out the particles of the desired size. By adjustment of the air stream speed particles of (more than) a certain weight will fall down and are collected at the bottom of the equipment. Smaller particles are lifted up by the air stream to the cyclone and then back into the spray chamber.
Where a batch process is applied, the process further comprises iii) removing the granules formed during said spray granulation from the spray granulation equipment; iv) size separating the granules formed. In this embodiment is also preferred to obtain larger granules and suitably, return the fines. In such an embodiment process may additionally comprise the steps of v) returning the particles of step iv) of a size <200 μm, preferably <300 μm, to the spray granulation tower for further spray granulation, and vi) collecting the granules of a size larger than 200 μm, preferably of larger than 300 μm, more preferred of about 400 μm or more and optionally, removing the particles larger than 1200 μm.
Size separation can be done by any method known in the art and in particular when applying the batch process, is usually and suitably done by sieving.
The invention furthermore encompasses a process for preparing free flowing granules of low hygroscopicity containing methylglycine diacetic acid (MGDA) salt(s) of the formula indicated above, by the steps of any of the spray granulation processes described, and wherein the MGDA containing granules prepared have a mean particle size in the range of 350 μm to 750 μm, and preferably in the range of 450 μm to 750 μm.
Where the use of MGDA in a detergent composition is envisaged, it is highly desirable that the MGDA obtained by the process of the invention is dust free, and, in general, has an mean particle size in the range of 350 μm to 750 μm. It is preferred to adjust the particle size of the MGDA containing granules to the size of the further components used in the detergent composition. The granules obtained with the process of the invention are larger than 200 μm, and preferably larger than 300 μm, more preferred larger than 400 μm or even larger than 450 μm. Suitably, the granules are smaller than 1200 μm, more preferred smaller than 1000 μm and even more preferred smaller than 900 μm. The preparation of granules which have a size in the range of 300 μm to 1000 μm is preferred. In an even further preferred embodiment the granules have a size in the range of 400 μm to 1000 μm, the mean particle size being in the range of 450 μm to 750 μm.
Certain applications may require even large particle sizes. In another embodiment of this invention, the granules have size in the range of 400 μm to 1000 μm, the mean particle size being in the range of 600 μm to 700 μm.
A preferred process includes the removal of granules of a size larger than 200 μm, preferably of about 300 μm or more from the spray granulation equipment, followed by sieving out the then collected granules having a mesh size of more than 1200 μm, preferably of more than 1100 μm, more preferred of more than 900 μm.
According to a preferred embodiment, free flowing methylglycine diacetic acid (MGDA) granules of the formula indicated above are prepared from a concentrated slurry having an MGDA content of at least 45%-70% and suitably from 50% to 70%, and a moisture content between 30% and 55%, and suitably between 30% and 50%. When preparing a concentrated slurry from MGDA having an MGDA content of more than 50%, a fine, needle-like homogeneous crystal structure is formed. Such a slurry can be used as such for the spray granulation process and is preferred. In a particular suitable embodiment, the concentrated slurry has an MGDA content in the range of 55 to 65%. When a slurry with an MGDA content in the range of 45-50% is applied also a fine, needle-like homogeneous crystal structure will be formed, for these amounts it is preferred that seed particles are present in said slurry, which will allow crystallisation and so, at the start of the spray granulation process sufficient seed granules are present. The granules are formed by spraying small quantities of the slurry onto seed particles while these are fluidised with the warm gas stream to evaporate the solvent from the liquid sprayed onto the seed particles. Also when a slurry with an MGDA content of more than 50% is applied seed particles can be applied. Where further ingredients are present in the slurry, also seed particles should be present in the slurry.
Preferably, the slurry is an aqueous slurry.
The concentrated slurry is heated to a temperature in the range of 50 to 12O0C, and preferably to above 700C, more preferred to about 8O0C. It is furthermore preferred that the slurry is heated to a temperature of not more than 1100C, preferably less than 100°C.
In the spray granulation process, it is preferred to spray granulate the MGDA containing slurry at an inlet air temperature of up to 1200C. When applying higher temperatures, even at 1300C, the MGDA becomes sticky and such may result in serious problems during the processing, such as hot spots in the equipment. The maximum air temperature should be chosen be below the melting temperature of the material, whereas the minimum air temperature should be to chosen such that the solvent evaporates rapidly, suitably being on or above the boiling temperature of the solvent. Hence, where an aqueous slurry is applied, the inlet air temperature is preferably at least 1000C. Suitably, the inlet air temperature is in the range of 100 to 1200C where an aqueous slurry is applied in the spray granulation process of the invention. In a further preferred embodiment of the invention, the inlet air temperature is less than 115°C, and more preferred in the range of 90 to 115°C.
The resulting particles are free flowing and have a low hygroscopicity . Free flowing in this context includes that particles are free flowing upon movement or handling. Preferably, the moisture uptake during the one week storage of the hygroscopicity test is less than 23%, further preferred less than 17%.
In the spray granulation process, the slurry feed stream is passed through a nozzle inside the spray dryer chamber, where it immediately comes into contact with a fluidizing gas stream at controlled temperature. The solvent evaporates rapidly and the resulting granules are separated from the air stream. Depending on the mode of operation of the equipment this separation can be done inside the fluidiser through a fluidiser classifier, or outside by sieving. The too fine particles are retained inside or returned to the fluidiser for further spray- granulation.
The production process furthermore allows for the preparation of granules comprising, in addition to MGDA salt, other (added) ingredients such as polymers, inorganic salts, and/or citrate or a combination thereof. Such granules are prepared from a slurry containing MGDA and/or any salts thereof, and any further ingredients as desired. This allows for a simplified production process of granules for a detergent composition. Suitable compounds can be selected from the composition the MGDA is intended to be used in. For example, when MGDA is intended to be used in a machine dishwash composition, the compounds can be selected from an ingredient suitably used in such a dishwash composition. Examples of compounds found to be suitable for use in the process of the invention are inorganic salts, such as carbonate, sulphate, silicate; organic salts, used e.g. as builders, such as citrate; or polymers, such as polyacrylates or sulphonated polymers. Mixtures of one or more of these compounds can be applied as well. These compounds are usually readily available as solutions and therefore allow for easy application in the current process, as such a solution can be mixed with a slurry containing MGDA and/or any salts thereof . The resulting granules are homogeneous and, regardless of size, contain uniform proportions of the ingredients. However, it has also been observed that such combination may lead to a reduction of hygroscopicity . Preferably, in such an embodiment, the amount of further ingredients is therefore less than 25 wt%, preferably less than 20 wt% and even more preferred less than 15 wt%, based on the amount of MGDA. Also in this embodiment the process can be applied as a continuous process or batch process, the continuous process being preferred. The process allows for the preparation of granules having a size matching that of the further ingredients present in composition the granules will be used in, such is indicated above in this patent specification.
The resulting products in this process of the invention are found to show improved product stability, and, in particular, improved friability resistance.
The use of the free flowing granules obtained by the invention in detergent compositions been found to be very beneficial. In particular, the use of such granules in machine dishwash detergent compositions is proposed.
In a further embodiment, the use of such free flowing granules for the preparation of detergent tablets is proposed. Friability test is carried out to determine the degree of disintegration of granules as a result of attrition during pneumatic transport. In this test, a current with a constant flow of 14.5 litres per minute is passed for 5 minutes through a sample from which particles larger than 1250 μm and smaller than 180 μm have been removed by sieving. The quantity of granulate (wt%) that has been broken into particles smaller than 180 μm is then determined. The result is calculated as follows :
G-F
% attrition = x 100
Where : G= quantity of sample used (about 25g)
F= sieve fraction larger than 180 μm after the test
The percentage attrition is expressed as % of raw material smaller than 180 μm after the test.
Examples
Example 1
On a laboratory scale, the following aqueous solutions were spray granulated
Figure imgf000014_0001
Comparative example The slurry of these compositions was heated to 500C for examples A and 85°C for example B.
About 2 kg. of each of the compositions was spray granulated at an air inlet temperature of about 1100C. At the start a small quantity of MGDA powder was added as seed particles. The obtained products were removed and assessed.
The analysis of the resulting granules showed the following results :
Figure imgf000015_0001
**when stored at 200C and 65% relative humidity for 1 week
As can be seen, both comparative examples suffered from poor hygroscopicity . Example B gives excellent low hygroscopicity, will also particle size and friability are significantly improved compared to the comparative example where the moisture content is more than 55% and the concentration of MGDA is below 45%.
Example 2
On a pilot plant scale, the following aqueous solutions were spray granulated
Figure imgf000015_0002
A throughput of about 30kg/h was spray granulated. An inlet air of 1050C for example C and 100° for example D was applied to fluidize the particles. The particles temperature in the bed was about 55°C. At the start a small quantity of MGDA powder was added as starting seed particles. An inlet air classification was applied in order to get the particles of mean size above 400 μm out.
A final throughput of about 20kg/h was obtained and the granules were characterised. The analysis of the resulting granules showed the following results:
Figure imgf000016_0001

Claims

Claims
1. A process for the preparation of free flowing granules of low hygroscopicity of one or more rnethylglycine diacetic acid (MGDA) salts, of the formula
R
I CH2COOM
MOOC CH N
^ CH2COOM wherein
R = CH3 and M is hydrogen, alkali metal, alkaline earth metal, ammonium or substituted ammonium in the appropriate stoechiometric amounts, by a process comprising the steps of i) heating a concentrated slurry comprising methylglycine diacetic acid (MGDA) and/or any salts thereof, the slurry having a solids content content in the range of 45% to 70% and suitably in the range from 50% to 70%, and a moisture content of 30% up to 55%, and suitably between 30% and 50%, to a temperature in the range of 50 to 1200C, preferably to about 800C, and ii) spray granulating said slurry, using an air inlet temperature of 1200C or less.
2. Process according to claim 1, wherein the concentrated slurry consists of methylglycine diacetic acid (MGDA) and/or any salts thereof.
3. Process according to any one of claims 1 or 2, wherein after the spray granulating the granules of a size larger than 200 μm, preferably larger than 300 μm and more preferred of about 400 μm or more are removed from the spray granulation equipment.
4. Process according to any one of claims 1 or 2, wherein the process further comprises iii) removing the granules formed during said spray granulation from the spray granulation equipment; iv) size separating the granules formed.
5. Process according to claim 4, wher-ein the process further comprises v) returning the particles of step iv) of a size <200 μm, preferably <300 μm, to the spray granulation tower for further spray granulation, and vi) collecting the granules of a size larger than 200 μm, preferably of larger than 300 μm, more preferred of about 400 μm or more and optionally, removing the particles larger than 1200 μm.
6. Process according to any one of claims 1 to 5, wherein the concentrated slurry comprising methylglycine diacetic acid (MGDA) and/or any salts thereof furthermore comprises one or more further ingredients.
7. Process according to claim 6, wherein the amount of further ingredients is less than 15 wt%, based on the amount of MGDA.
8. Process according to any one of claims 6 or 7, wherein the further ingredient is chosen from carbonate, sulphate, silicate, citrate, polyacrylates, sulphonated polymers, or mixtures thereof.
9. Process according to any one of claims 1 to 8, wherein the concentrated slurry has a solids content in the range of 55 to 65%.
10. Process according to any one of claims 1 to 9, wherein the inlet air temperature is less than 115°C.
11. Process according to any one of claims 1 to 10, wherein the MGDA-salt containing granules prepared have a mean particle size in the range of 350 μm to 750 μm, and preferably in the range of 450 μm to 750 μm.
12. Use of free flowing granules comprising methylglycine diacetic acid (MGDA) salt(s) prepared according to the process of any one of claims 1 to 11 in a detergent composition.
13. Use of free flowing granules comprising methylglycine diacetic acid (MGDA) salt(s) prepared according to the process of any one of claims 1 to 11 in a machine dishwash detergent composition.
14. Use of free flowing granules comprising methylglycine diacetic acid (MGDA) salt(s) prepared according to the process of any one of claims 1 to 11 in the preparation of detergent tablets.
PCT/EP2009/053781 2008-04-01 2009-03-31 Preparation of free flowing granules of methyglycine diacetic acid Ceased WO2009103822A1 (en)

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Cited By (86)

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Publication number Priority date Publication date Assignee Title
WO2011023382A3 (en) * 2009-08-26 2011-05-12 Inprotec Ag Method for producing a crystalline solid from glycine-n, n-diacetic acid derivatives
WO2011079940A1 (en) * 2009-12-30 2011-07-07 Inprotec Ag Solid containing glutamic acid-n, n-diacetic acid (glda) or a derivative therefrom and method for the production thereof
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WO2014096259A1 (en) 2012-12-21 2014-06-26 Novozymes A/S Polypeptides having protease activiy and polynucleotides encoding same
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WO2015049370A1 (en) 2013-10-03 2015-04-09 Novozymes A/S Detergent composition and use of detergent composition
US9096820B2 (en) 2009-12-24 2015-08-04 Akzo Nobel Chemicals International B.V. Coated particles of a glumatic acid N,N-diacetate chelating agent
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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2747177C1 (en) * 2020-07-30 2021-04-28 Общество с ограниченной ответственностью "Синергетик" Method for obtaining concentrated detergent for washing and its packaging
WO2024046786A1 (en) 2022-08-29 2024-03-07 Basf Se Process for preparing a solid composition comprising at least one aminocarboxylate complexing agent

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3956379A (en) * 1970-10-23 1976-05-11 Ethyl Corporation Process for recovering NTA
EP0845456A2 (en) * 1996-11-29 1998-06-03 Basf Aktiengesellschaft Process for the preparation of a crystalline solid of derivatives of (N,N-diacetic acid) glycine with an adequately reduced hygroscopicity
WO2001012768A1 (en) * 1999-08-11 2001-02-22 Basf Aktiengesellschaft Mixed powder or mixed granulate based on glycine-n,n-diacetic acid
WO2006003434A1 (en) * 2004-07-02 2006-01-12 Reckitt Benckiser N.V. Particulate
EP1721962A1 (en) * 2005-05-11 2006-11-15 Unilever N.V. Dishwashing composition and process for washing dishes

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DD296680A5 (en) 1990-07-13 1991-12-12 Veb Petrolchemisches Kombinat Schwedt,De PROCESS FOR GRANULATING THE TRINATRIUM SALT OF NITRILOTRIACIC ACID
US6770616B1 (en) * 1999-03-04 2004-08-03 The Procter & Gamble Company Detergent tablet
DE102004032320A1 (en) * 2004-07-02 2006-01-19 Basf Ag Mixed powder or mixed granules based on MGDA
EP3061744B1 (en) 2008-04-01 2018-05-09 Unilever N.V. Preparation of free flowing granules of methylglycine diacetic acid

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3956379A (en) * 1970-10-23 1976-05-11 Ethyl Corporation Process for recovering NTA
EP0845456A2 (en) * 1996-11-29 1998-06-03 Basf Aktiengesellschaft Process for the preparation of a crystalline solid of derivatives of (N,N-diacetic acid) glycine with an adequately reduced hygroscopicity
WO2001012768A1 (en) * 1999-08-11 2001-02-22 Basf Aktiengesellschaft Mixed powder or mixed granulate based on glycine-n,n-diacetic acid
WO2006003434A1 (en) * 2004-07-02 2006-01-12 Reckitt Benckiser N.V. Particulate
EP1721962A1 (en) * 2005-05-11 2006-11-15 Unilever N.V. Dishwashing composition and process for washing dishes

Cited By (138)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3061744B1 (en) 2008-04-01 2018-05-09 Unilever N.V. Preparation of free flowing granules of methylglycine diacetic acid
US20120071381A1 (en) * 2009-05-20 2012-03-22 Base Se Process for the preparation of a spray powder comprising one or more glycine-n,n-diacetic acid derivatives and use of the spray powder for producing compression agglomerates
US8748366B2 (en) * 2009-05-20 2014-06-10 Basf Se Process for the preparation of a spray powder comprising one or more glycine-N,N-diacetic acid derivatives and use of the spray powder for producing compression agglomerates
WO2011023382A3 (en) * 2009-08-26 2011-05-12 Inprotec Ag Method for producing a crystalline solid from glycine-n, n-diacetic acid derivatives
US20160221930A1 (en) * 2009-08-26 2016-08-04 Basf Se Method for producing a crystalline solid from glycine-n, n-diacetic acid derivatives with sufficiently reduced hygroscopicity
EP2470496B2 (en) 2009-08-26 2024-03-27 Basf Se Method for producing a crystalline solid from glycine-n, n-diacetic acid derivatives
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US9376649B2 (en) 2009-08-26 2016-06-28 Basf Se Method for producing a crystalline solid from glycine-N,N-diacetic acid derivatives with sufficiently reduced hygroscopicity
EP2470496B1 (en) 2009-08-26 2016-01-06 Basf Se Method for producing a crystalline solid from glycine-n, n-diacetic acid derivatives
CN102574083B (en) * 2009-10-12 2015-01-28 巴斯夫欧洲公司 Method for producing a powder containing one or more complexing agent salts
JP2013507499A (en) * 2009-10-12 2013-03-04 ビーエーエスエフ ソシエタス・ヨーロピア Method for producing a powder comprising a salt of one or more complexing agents
US9540597B2 (en) 2009-10-12 2017-01-10 Basf Se Process for the preparation of a powder comprising one or more complexing agent salts
RU2554932C2 (en) * 2009-10-12 2015-07-10 Басф Се Method of manufacturing powder, containing one or several complexing salts
CN102574083A (en) * 2009-10-12 2012-07-11 巴斯夫欧洲公司 Method for producing a powder containing one or more complexing agent salts
US11208376B2 (en) 2009-10-30 2021-12-28 Nouryon Chemicals International B.V. Use of a metal supplement in animal feed
US9096820B2 (en) 2009-12-24 2015-08-04 Akzo Nobel Chemicals International B.V. Coated particles of a glumatic acid N,N-diacetate chelating agent
WO2011079940A1 (en) * 2009-12-30 2011-07-07 Inprotec Ag Solid containing glutamic acid-n, n-diacetic acid (glda) or a derivative therefrom and method for the production thereof
US8940678B2 (en) 2009-12-30 2015-01-27 Basf Se Method for producing a solid with sufficiently low hygroscopicity which comprises glutamic acid-N,N-diacetic acid (GLDA) or a derivative thereof
KR101811894B1 (en) 2009-12-30 2017-12-22 바스프 에스이 Solid containing glutamic acid-n,n-diacetic acid(glda) or a derivative therefrom and method for the production thereof
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KR101897991B1 (en) * 2010-09-27 2018-09-12 바스프 에스이 Process for producing granules comprising one or more complexing agent salts
KR20130106819A (en) * 2010-09-27 2013-09-30 바스프 에스이 Process for producing granules comprising one or more complexing agent salts
CN103124720B (en) * 2010-09-27 2014-12-10 巴斯夫欧洲公司 Process for producing granules comprising one or more complexing agent salts
JP2013544901A (en) * 2010-09-27 2013-12-19 ビーエーエスエフ ソシエタス・ヨーロピア Method for producing granules containing one or more complexing agent salts
WO2012041741A1 (en) * 2010-09-27 2012-04-05 Basf Se Process for producing granules comprising one or more complexing agent salts
GB2491619B (en) * 2011-06-09 2014-10-01 Pq Silicas Bv Builder granules and process for their preparation
US20140073554A1 (en) * 2011-06-09 2014-03-13 Pq Silicas Bv Builder granules and process for their preparation
US20160376529A1 (en) * 2011-06-09 2016-12-29 Pq Silicas Bv Builder granules and process for their preparation
GB2491619A (en) * 2011-06-09 2012-12-12 Pq Silicas Bv Builder granules and a process for their preparation
US9476013B2 (en) * 2011-06-09 2016-10-25 Pq Silicas Bv Builder granules and process for their preparation
WO2012168739A1 (en) 2011-06-09 2012-12-13 Pq Silicas Bv Builder granules and process for their preparation
WO2012175401A2 (en) 2011-06-20 2012-12-27 Novozymes A/S Particulate composition
WO2012175708A2 (en) 2011-06-24 2012-12-27 Novozymes A/S Polypeptides having protease activity and polynucleotides encoding same
WO2013001087A2 (en) 2011-06-30 2013-01-03 Novozymes A/S Method for screening alpha-amylases
EP3543333A2 (en) 2011-06-30 2019-09-25 Novozymes A/S Method for screening alpha-amylases
EP4026901A2 (en) 2011-06-30 2022-07-13 Novozymes A/S Method for screening alpha-amylases
WO2013007594A1 (en) 2011-07-12 2013-01-17 Novozymes A/S Storage-stable enzyme granules
WO2013024021A1 (en) 2011-08-15 2013-02-21 Novozymes A/S Polypeptides having cellulase activity and polynucleotides encoding same
WO2013041689A1 (en) 2011-09-22 2013-03-28 Novozymes A/S Polypeptides having protease activity and polynucleotides encoding same
WO2013059422A1 (en) 2011-10-19 2013-04-25 The Procter & Gamble Company Particle
EP2584028A1 (en) 2011-10-19 2013-04-24 The Procter & Gamble Company Particle
JP2020094216A (en) * 2011-10-19 2020-06-18 ザ プロクター アンド ギャンブル カンパニーThe Procter & Gamble Company particle
WO2013076269A1 (en) 2011-11-25 2013-05-30 Novozymes A/S Subtilase variants and polynucleotides encoding same
WO2013092635A1 (en) 2011-12-20 2013-06-27 Novozymes A/S Subtilase variants and polynucleotides encoding same
WO2013110766A1 (en) 2012-01-26 2013-08-01 Novozymes A/S Use of polypeptides having protease activity in animal feed and detergents
WO2013120948A1 (en) 2012-02-17 2013-08-22 Novozymes A/S Subtilisin variants and polynucleotides encoding same
WO2013131964A1 (en) 2012-03-07 2013-09-12 Novozymes A/S Detergent composition and substitution of optical brighteners in detergent compositions
WO2013167581A1 (en) 2012-05-07 2013-11-14 Novozymes A/S Polypeptides having xanthan degrading activity and polynucleotides encoding same
WO2013189972A2 (en) 2012-06-20 2013-12-27 Novozymes A/S Use of polypeptides having protease activity in animal feed and detergents
WO2014027181A1 (en) * 2012-08-15 2014-02-20 Reckitt Benckiser N.V. Adw detergent composition
US10392586B2 (en) 2012-08-15 2019-08-27 Reckitt Benckiser Finish B.V. Automatic dishwashing compositions having a detergent granule
WO2014096259A1 (en) 2012-12-21 2014-06-26 Novozymes A/S Polypeptides having protease activiy and polynucleotides encoding same
EP3321360A2 (en) 2013-01-03 2018-05-16 Novozymes A/S Alpha-amylase variants and polynucleotides encoding same
WO2014183921A1 (en) 2013-05-17 2014-11-20 Novozymes A/S Polypeptides having alpha amylase activity
EP3786269A1 (en) 2013-06-06 2021-03-03 Novozymes A/S Alpha-amylase variants and polynucleotides encoding same
WO2014207227A1 (en) 2013-06-27 2014-12-31 Novozymes A/S Subtilase variants and polynucleotides encoding same
WO2014207224A1 (en) 2013-06-27 2014-12-31 Novozymes A/S Subtilase variants and polynucleotides encoding same
WO2015001017A2 (en) 2013-07-04 2015-01-08 Novozymes A/S Polypeptides having anti-redeposition effect and polynucleotides encoding same
EP3613853A1 (en) 2013-07-29 2020-02-26 Novozymes A/S Protease variants and polynucleotides encoding same
EP3611260A1 (en) 2013-07-29 2020-02-19 Novozymes A/S Protease variants and polynucleotides encoding same
EP3339436A1 (en) 2013-07-29 2018-06-27 Henkel AG & Co. KGaA Detergent composition comprising protease variants
EP4477734A2 (en) 2013-07-29 2024-12-18 Novozymes A/S Protease variants and polynucleotides encoding same
EP2832853A1 (en) 2013-07-29 2015-02-04 Henkel AG&Co. KGAA Detergent composition comprising protease variants
EP3309249A1 (en) 2013-07-29 2018-04-18 Novozymes A/S Protease variants and polynucleotides encoding same
WO2015049370A1 (en) 2013-10-03 2015-04-09 Novozymes A/S Detergent composition and use of detergent composition
EP3453757A1 (en) 2013-12-20 2019-03-13 Novozymes A/S Polypeptides having protease activity and polynucleotides encoding same
US11518965B2 (en) 2014-02-13 2022-12-06 Basf Se Powder and granule, process for making such powder and granule, and use thereof
CN105980538A (en) * 2014-02-13 2016-09-28 巴斯夫欧洲公司 Powders and granules, processes for their preparation and uses thereof
WO2015121170A1 (en) * 2014-02-13 2015-08-20 Basf Se Powder and granule, process for making such powder and granule, and use thereof
WO2015134729A1 (en) 2014-03-05 2015-09-11 Novozymes A/S Compositions and methods for improving properties of non-cellulosic textile materials with xyloglucan endotransglycosylase
WO2015134737A1 (en) 2014-03-05 2015-09-11 Novozymes A/S Compositions and methods for improving properties of cellulosic textile materials with xyloglucan endotransglycosylase
WO2015150457A1 (en) 2014-04-01 2015-10-08 Novozymes A/S Polypeptides having alpha amylase activity
WO2015189371A1 (en) 2014-06-12 2015-12-17 Novozymes A/S Alpha-amylase variants and polynucleotides encoding same
EP3739029A1 (en) 2014-07-04 2020-11-18 Novozymes A/S Subtilase variants and polynucleotides encoding same
EP3878960A1 (en) 2014-07-04 2021-09-15 Novozymes A/S Subtilase variants and polynucleotides encoding same
WO2016079305A1 (en) 2014-11-20 2016-05-26 Novozymes A/S Alicyclobacillus variants and polynucleotides encoding same
EP3690037A1 (en) 2014-12-04 2020-08-05 Novozymes A/S Subtilase variants and polynucleotides encoding same
EP4530348A2 (en) 2014-12-15 2025-04-02 Henkel AG & Co. KGaA Detergent composition comprising subtilase variants
US10760036B2 (en) 2014-12-15 2020-09-01 Henkel Ag & Co. Kgaa Detergent composition comprising subtilase variants
EP3608403A2 (en) 2014-12-15 2020-02-12 Henkel AG & Co. KGaA Detergent composition comprising subtilase variants
EP3872175A1 (en) 2015-06-18 2021-09-01 Novozymes A/S Subtilase variants and polynucleotides encoding same
EP3106508A1 (en) 2015-06-18 2016-12-21 Henkel AG & Co. KGaA Detergent composition comprising subtilase variants
EP4071244A1 (en) 2015-06-18 2022-10-12 Novozymes A/S Subtilase variants and polynucleotides encoding same
EP4324919A2 (en) 2015-10-14 2024-02-21 Novozymes A/S Polypeptide variants
WO2017064253A1 (en) 2015-10-14 2017-04-20 Novozymes A/S Polypeptides having protease activity and polynucleotides encoding same
WO2017064269A1 (en) 2015-10-14 2017-04-20 Novozymes A/S Polypeptide variants
JP2019507671A (en) * 2015-12-11 2019-03-22 ビーエーエスエフ ソシエタス・ヨーロピアBasf Se Granule production method
WO2017097657A1 (en) * 2015-12-11 2017-06-15 Basf Se Process for manufacturing granules
US10975334B2 (en) 2015-12-11 2021-04-13 Basf Se Process for manufacturing granules
WO2017207762A1 (en) 2016-06-03 2017-12-07 Novozymes A/S Subtilase variants and polynucleotides encoding same
WO2017220308A1 (en) * 2016-06-20 2017-12-28 Basf Se Powders and granules and process for making such powders and granules
US11028350B2 (en) 2016-06-20 2021-06-08 Basf Se Powders and granules and process for making such powders and granules
CN109415662A (en) * 2016-06-20 2019-03-01 巴斯夫欧洲公司 Powder and particle and the method for preparing the powder and particle
EP3266860B1 (en) 2016-07-08 2020-04-08 The Procter and Gamble Company Process for making a particle
EP3950941A2 (en) 2016-07-13 2022-02-09 Novozymes A/S Dnase polypeptide variants
WO2018011277A1 (en) 2016-07-13 2018-01-18 Novozymes A/S Bacillus cibi dnase variants
WO2018011276A1 (en) 2016-07-13 2018-01-18 The Procter & Gamble Company Bacillus cibi dnase variants and uses thereof
WO2018011027A1 (en) 2016-07-15 2018-01-18 Basf Se Process for manufacturing of mgda and glda containing granules, the granules and their use
US10865362B2 (en) 2016-07-15 2020-12-15 Basf Se Process for manufacturing MGDA/GLDA granules, granules, and their use
RU2744632C2 (en) * 2016-07-15 2021-03-12 Басф Се Method for producing granules containing mgda and glda, granules and their application
US10836709B2 (en) 2017-07-07 2020-11-17 Nouryon Chemicals International B.V. Process to prepare a solid composition of an amino acid diacetic acid
WO2019007943A1 (en) 2017-07-07 2019-01-10 Akzo Nobel Chemicals International B.V. Process to prepare a solid composition of an amino acid diacetic acid
WO2019084349A1 (en) 2017-10-27 2019-05-02 The Procter & Gamble Company Detergent compositions comprising polypeptide variants
WO2019081724A1 (en) 2017-10-27 2019-05-02 Novozymes A/S Dnase variants
WO2019081721A1 (en) 2017-10-27 2019-05-02 Novozymes A/S Dnase variants
WO2019201793A1 (en) 2018-04-17 2019-10-24 Novozymes A/S Polypeptides comprising carbohydrate binding activity in detergent compositions and their use in reducing wrinkles in textile or fabric.
WO2020064379A1 (en) 2018-09-27 2020-04-02 Basf Se Process for making a granule or powder
US12006487B2 (en) 2018-09-27 2024-06-11 Basf Se Process for making a granule or powder
WO2020094480A1 (en) 2018-11-07 2020-05-14 Basf Se Process for manufacturing granules, and granules and their use
WO2020104231A1 (en) 2018-11-19 2020-05-28 Basf Se Powders and granules containing a chelating agent and an enzyme
WO2020127349A1 (en) 2018-12-21 2020-06-25 Nouryon Chemicals International B.V. Crumbly phase composition of methylglycine n,n diacetic acid
WO2020188095A1 (en) 2019-03-21 2020-09-24 Novozymes A/S Alpha-amylase variants and polynucleotides encoding same
US12275919B2 (en) 2019-04-01 2025-04-15 Basf Se Process for making a granule or powder
WO2020200836A1 (en) 2019-04-01 2020-10-08 Basf Se Process for making a granule or powder
WO2020207944A1 (en) 2019-04-10 2020-10-15 Novozymes A/S Polypeptide variants
WO2021037895A1 (en) 2019-08-27 2021-03-04 Novozymes A/S Detergent composition
WO2021053127A1 (en) 2019-09-19 2021-03-25 Novozymes A/S Detergent composition
WO2021064068A1 (en) 2019-10-03 2021-04-08 Novozymes A/S Polypeptides comprising at least two carbohydrate binding domains
US12415971B2 (en) 2019-12-11 2025-09-16 Basf Se Granules of MGDA and (meth)acrylic acid homo- or co-polymer; process for making the same
WO2021115851A1 (en) 2019-12-11 2021-06-17 Basf Se Granules of mgda and (meth)acrylic acid homo- or co-polymer; process for making the same
WO2021165144A1 (en) 2020-02-20 2021-08-26 Basf Se Process for making solid methylglycine diacetate alkali metal salts
WO2021185702A1 (en) 2020-03-17 2021-09-23 Basf Se Process for making a granule
US12351776B2 (en) 2020-03-17 2025-07-08 Basf Se Process for making a granule
EP3892708A1 (en) 2020-04-06 2021-10-13 Henkel AG & Co. KGaA Cleaning compositions comprising dispersin variants
WO2021255525A1 (en) 2020-06-19 2021-12-23 Nouryon Chemicals International B.V. Process to prepare a co granule of methylglycine n,n diacetic acid salts employing a crumbly phase composition of methylglycine n,n diacetic acid salts
WO2022074037A2 (en) 2020-10-07 2022-04-14 Novozymes A/S Alpha-amylase variants
WO2022128692A1 (en) 2020-12-17 2022-06-23 Basf Se Process for making a solid alkali metal salt of an aminocarboxylate complexing agent
WO2022171780A2 (en) 2021-02-12 2022-08-18 Novozymes A/S Alpha-amylase variants
WO2022184551A1 (en) 2021-03-04 2022-09-09 Basf Se Process for making a particulate coated organic salt, and particulate coated salt
WO2022268885A1 (en) 2021-06-23 2022-12-29 Novozymes A/S Alpha-amylase polypeptides
WO2023025637A1 (en) 2021-08-25 2023-03-02 Basf Se Process for making a granule or powder containing a complexing agent
WO2023110611A1 (en) 2021-12-17 2023-06-22 Basf Se Process for making granules and powders
WO2024131880A2 (en) 2022-12-23 2024-06-27 Novozymes A/S Detergent composition comprising catalase and amylase

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